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I guess I have really bad intuition when it comes to elevators and accelerating upward/downward.
A scientist operating a pendulum in an elevator sees that the pendulum's period is shorter than can be accounted for by gravity alone if she takes measurements when the pendulum apparatus is moving with a constant:
C. downward acceleration
D. upward acceleration
The relevant equation, if you don't know it, is Period = 2pi sqrtL/g
The answer is D because: When an elevator accelerates upward, you feel as if gravity is pulling you down harder. The same effect will make the pendulum "feel" as if gravity is pulling on it harder. This will decrease the period.
So my intuition (obviously wrong) was/is that when you are accelerating downward in an elevator, that you are adding to the already downward acceleration due to gravity (like if a car is rolling down a hill and you rear-end it with your car.. It is now accelerating downhill even faster). Why isn't that correct? Why is your downward acceleration greater when you are accelerating upward in an elevator?
A scientist operating a pendulum in an elevator sees that the pendulum's period is shorter than can be accounted for by gravity alone if she takes measurements when the pendulum apparatus is moving with a constant:
C. downward acceleration
D. upward acceleration
The relevant equation, if you don't know it, is Period = 2pi sqrtL/g
The answer is D because: When an elevator accelerates upward, you feel as if gravity is pulling you down harder. The same effect will make the pendulum "feel" as if gravity is pulling on it harder. This will decrease the period.
So my intuition (obviously wrong) was/is that when you are accelerating downward in an elevator, that you are adding to the already downward acceleration due to gravity (like if a car is rolling down a hill and you rear-end it with your car.. It is now accelerating downhill even faster). Why isn't that correct? Why is your downward acceleration greater when you are accelerating upward in an elevator?